Damage assessment: Difference between revisions
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'''Damage assessment''' is the [[process]] of evaluating the extent and severity of damage caused by an event such as a natural disaster, accident, or attack. The process involves identifying and quantifying the damage to buildings, infrastructure, and other assets, as well as assessing the impact on the affected population and the [[environment]]. The [[information]] gathered during the assessment is used to inform the development of a response [[plan]] and to allocate resources for recovery and rebuilding efforts. | '''Damage assessment''' is the [[process]] of evaluating the extent and severity of damage caused by an event such as a natural disaster, accident, or attack. The process involves identifying and quantifying the damage to buildings, infrastructure, and other assets, as well as assessing the impact on the affected population and the [[environment]]. The [[information]] gathered during the assessment is used to inform the development of a response [[plan]] and to allocate resources for recovery and rebuilding efforts. | ||
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It's important to note that the assessment process may vary depending on the specific event and the type of damage sustained. Additionally, it's also important to consider the safety of the assessors and the community during the assessment process. | It's important to note that the assessment process may vary depending on the specific event and the type of damage sustained. Additionally, it's also important to consider the safety of the assessors and the community during the assessment process. | ||
{{infobox5|list1={{i5link|a=[[Compliance audit]]}} — {{i5link|a=[[Environmental audit]]}} — {{i5link|a=[[Needs assessment]]}} — {{i5link|a=[[Quality plan]]}} — {{i5link|a=[[Stages of project]]}} — {{i5link|a=[[Evaluation of the project]]}} — {{i5link|a=[[Risk appetite]]}} — {{i5link|a=[[Assessment of the project]]}} — {{i5link|a=[[Non-conformity]]}} }} | |||
==References== | ==References== | ||
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* Sun, Z., & Chang, C. C. (2002). Structural damage assessment based on wavelet packet transform. Journal of structural engineering, 128(10), 1354-1361. | * Sun, Z., & Chang, C. C. (2002). Structural damage assessment based on wavelet packet transform. Journal of structural engineering, 128(10), 1354-1361. | ||
* Goretti, A., & Di Pasquale, G. (2002, September). ''[https://www.eeri.org/lfe/pdf/italy_molise_goretti_pasadena_paper.pdf An overview of post-earthquake damage assessment in Italy]''. In Eeri invitational workshop. An [[action]] plan to develop earthquake damage and loss data protocols, California. | * Goretti, A., & Di Pasquale, G. (2002, September). ''[https://www.eeri.org/lfe/pdf/italy_molise_goretti_pasadena_paper.pdf An overview of post-earthquake damage assessment in Italy]''. In Eeri invitational workshop. An [[action]] plan to develop earthquake damage and loss data protocols, California. | ||
[[Category:Risk management]] | [[Category:Risk management]] |
Latest revision as of 19:41, 17 November 2023
Damage assessment is the process of evaluating the extent and severity of damage caused by an event such as a natural disaster, accident, or attack. The process involves identifying and quantifying the damage to buildings, infrastructure, and other assets, as well as assessing the impact on the affected population and the environment. The information gathered during the assessment is used to inform the development of a response plan and to allocate resources for recovery and rebuilding efforts.
Procedure of data assessment
There are several steps involved in performing a damage assessment:
- Planning: Before beginning the assessment, a plan should be developed that outlines the scope of the assessment, the resources required, and the roles and responsibilities of the assessment team.
- Data collection: This step involves gathering information about the affected area, including the location and extent of damage, the condition of infrastructure, and the needs of the affected population. This can be done through visual inspections, aerial imagery, and other forms of remote sensing, as well as through interviews with local officials and residents.
- Analysis: The data collected in the previous step is analyzed to identify patterns and trends in the damage and to prioritize areas for further investigation.
- Reporting: The findings of the assessment are documented in a report that includes a summary of the damage, recommendations for response and recovery efforts, and an estimate of the resources required to repair the damage.
- Follow-up: After the initial assessment, it is important to conduct follow-up assessments to track progress and to ensure that the needs of the affected community are being met.
It's important to note that the assessment process may vary depending on the specific event and the type of damage sustained. Additionally, it's also important to consider the safety of the assessors and the community during the assessment process.
Damage assessment — recommended articles |
Compliance audit — Environmental audit — Needs assessment — Quality plan — Stages of project — Evaluation of the project — Risk appetite — Assessment of the project — Non-conformity |
References
- Simoen, E., De Roeck, G., & Lombaert, G. (2015). Dealing with uncertainty in model updating for damage assessment: A review. Mechanical Systems and Signal Processing, 56, 123-149.
- Sun, Z., & Chang, C. C. (2002). Structural damage assessment based on wavelet packet transform. Journal of structural engineering, 128(10), 1354-1361.
- Goretti, A., & Di Pasquale, G. (2002, September). An overview of post-earthquake damage assessment in Italy. In Eeri invitational workshop. An action plan to develop earthquake damage and loss data protocols, California.